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先进的纳米药物用于调节癌症代谢。

Advanced nanomedicines for the regulation of cancer metabolism.

机构信息

China Academy of Chinese Medical Sciences, Institute of Chinese Materia Medica, Beijing, 100700, China.

China Academy of Chinese Medical Sciences, Institute of Chinese Materia Medica, Beijing, 100700, China.

出版信息

Biomaterials. 2022 Jul;286:121565. doi: 10.1016/j.biomaterials.2022.121565. Epub 2022 May 7.

Abstract

Cancer cells can reprogram metabolic pathways to facilitate proliferation, metastasis, biosynthesis, and chemoresistance. Metabolic reprogramming is currently considered as a hallmark of tumors and is recognized as a promising therapeutic strategy. The recent progress in nanomedicine has greatly improved the therapeutic effect of conventional therapeutic modalities such as surgical treatment, radiotherapy, chemical drug therapy. However, nanomedicine engineering still fails to achieve satisfactory therapeutic effects due to the metabolic reprogramming of tumor cells. The targeted delivery and development of precise therapeutic strategies are the latest focus in tumor metabolism to design nanomedicines according to the characteristics of cancer metabolic reprogramming. Therefore, this review focuses mainly on metabolic pathways of tumors. Pathways such as glycolysis, aerobic respiration, lipid metabolism, nucleotide metabolism, and glutathione metabolism are reviewed in detail. The latest advances are summarized in the design and combined treatment of smart nanomedicines that can regulate cancer metabolism to provide an emerging cancer therapeutic model. The challenges and future developments of this cancer therapeutic model are discussed in detail to understand as much as possible the prospects of this field. Designing nanomedicine therapy strategies by targeting tumor metabolic characteristics will provide a novel approach for the application of personalized biomedicine of tumors.

摘要

癌细胞可以重新编程代谢途径,以促进增殖、转移、生物合成和化疗耐药性。代谢重编程目前被认为是肿瘤的一个标志,并被认为是一种有前途的治疗策略。纳米医学的最新进展极大地提高了手术治疗、放射治疗、化学药物治疗等传统治疗方式的治疗效果。然而,由于肿瘤细胞的代谢重编程,纳米医学工程仍然未能达到令人满意的治疗效果。针对肿瘤代谢的靶向递药和精确治疗策略的开发是纳米医学的最新焦点,旨在根据癌症代谢重编程的特点设计纳米药物。因此,本综述主要关注肿瘤的代谢途径。详细综述了糖酵解、有氧呼吸、脂代谢、核苷酸代谢和谷胱甘肽代谢等途径。总结了能够调节癌症代谢的智能纳米药物的设计和联合治疗的最新进展,为新兴的癌症治疗模式提供了依据。详细讨论了这种癌症治疗模式的挑战和未来发展,以尽可能了解该领域的前景。通过靶向肿瘤代谢特征设计纳米医学治疗策略,将为肿瘤个性化生物医学的应用提供新途径。

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